Research on Non-Invasive Floating Ground Voltage Measurement and Calibration Method

Voltage measurement is an important part of power system operation, and non-intrusive voltage sensors have the advantages of low insulation difficulty, simple structure, easy loading and unloading, and high construction safety, which have become a new direction for voltage measurement. Based on the...

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Main Authors: Chunguang Suo, Mingxing He, Guoqiong Zhou, Xinghua Shi, Xiangyu Tan, Wenbin Zhang
Format: Article
Language:English
Published: MDPI AG 2023-04-01
Series:Electronics
Subjects:
Online Access:https://www.mdpi.com/2079-9292/12/8/1858
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author Chunguang Suo
Mingxing He
Guoqiong Zhou
Xinghua Shi
Xiangyu Tan
Wenbin Zhang
author_facet Chunguang Suo
Mingxing He
Guoqiong Zhou
Xinghua Shi
Xiangyu Tan
Wenbin Zhang
author_sort Chunguang Suo
collection DOAJ
description Voltage measurement is an important part of power system operation, and non-intrusive voltage sensors have the advantages of low insulation difficulty, simple structure, easy loading and unloading, and high construction safety, which have become a new direction for voltage measurement. Based on the principle of electric field coupling, this paper constructs a non-intrusive floating ground three-capacitance voltage measurement model, which can complete the accurate measurement of voltage without connecting with the line to be measured and the earth in the measurement process. In non-intrusive voltage measurement, the change of the object to be measured or the measurement environment will cause the change of the coupling capacitance, which leads to the uncertainty of the transmission relationship of the sensor and the large error of measurement results. In order to solve this problem, a new method of sensor calibration is proposed in this paper. By sampling capacitance in parallel between two electrodes of the sensor, changing the capacitance value, and establishing an input output equation, the coupling capacitance value and the voltage value to be measured under different operating conditions are solved. In addition, the sampling capacitance is often several orders of magnitude larger than the sensor’s own capacitance, making the sensor’s voltage division ratio significantly higher and more conducive to the measurement of high voltages. The experimental results show that the measurement error is less than 2%, which verifies the feasibility of the method and the accuracy of the voltage measurement.
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spelling doaj.art-1156daec400b41a7b9a7bfd2b9a9b6da2023-11-17T19:01:53ZengMDPI AGElectronics2079-92922023-04-01128185810.3390/electronics12081858Research on Non-Invasive Floating Ground Voltage Measurement and Calibration MethodChunguang Suo0Mingxing He1Guoqiong Zhou2Xinghua Shi3Xiangyu Tan4Wenbin Zhang5Faculty of Science, Kunming University of Science and Technology, Kunming 650504, ChinaFaculty of Science, Kunming University of Science and Technology, Kunming 650504, ChinaFaculty of Science, Kunming University of Science and Technology, Kunming 650504, ChinaFaculty of Science, Kunming University of Science and Technology, Kunming 650504, ChinaElectric Power Research Institute, Yunnan Power Grid Co., Ltd., Kunming 650504, ChinaCollege of Mechanical and Electrical Engineering, Kunming University of Science and Technology, Kunming 650504, ChinaVoltage measurement is an important part of power system operation, and non-intrusive voltage sensors have the advantages of low insulation difficulty, simple structure, easy loading and unloading, and high construction safety, which have become a new direction for voltage measurement. Based on the principle of electric field coupling, this paper constructs a non-intrusive floating ground three-capacitance voltage measurement model, which can complete the accurate measurement of voltage without connecting with the line to be measured and the earth in the measurement process. In non-intrusive voltage measurement, the change of the object to be measured or the measurement environment will cause the change of the coupling capacitance, which leads to the uncertainty of the transmission relationship of the sensor and the large error of measurement results. In order to solve this problem, a new method of sensor calibration is proposed in this paper. By sampling capacitance in parallel between two electrodes of the sensor, changing the capacitance value, and establishing an input output equation, the coupling capacitance value and the voltage value to be measured under different operating conditions are solved. In addition, the sampling capacitance is often several orders of magnitude larger than the sensor’s own capacitance, making the sensor’s voltage division ratio significantly higher and more conducive to the measurement of high voltages. The experimental results show that the measurement error is less than 2%, which verifies the feasibility of the method and the accuracy of the voltage measurement.https://www.mdpi.com/2079-9292/12/8/1858non-contact voltage measurementthree capacitance modelself-calibration
spellingShingle Chunguang Suo
Mingxing He
Guoqiong Zhou
Xinghua Shi
Xiangyu Tan
Wenbin Zhang
Research on Non-Invasive Floating Ground Voltage Measurement and Calibration Method
Electronics
non-contact voltage measurement
three capacitance model
self-calibration
title Research on Non-Invasive Floating Ground Voltage Measurement and Calibration Method
title_full Research on Non-Invasive Floating Ground Voltage Measurement and Calibration Method
title_fullStr Research on Non-Invasive Floating Ground Voltage Measurement and Calibration Method
title_full_unstemmed Research on Non-Invasive Floating Ground Voltage Measurement and Calibration Method
title_short Research on Non-Invasive Floating Ground Voltage Measurement and Calibration Method
title_sort research on non invasive floating ground voltage measurement and calibration method
topic non-contact voltage measurement
three capacitance model
self-calibration
url https://www.mdpi.com/2079-9292/12/8/1858
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